Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Experimental investigation of liquefaction characteristics of saturated coral sand subjected to complex cyclic stress paths: Effects of loading frequency
Highlights Increased cyclic loading frequency decreases the generation rate of excess pore water pressure and deformation. Under a given cyclic loading mode, the cyclic liquefaction resistance of saturated coral sand increases with the cyclic loading frequency. Under isotropic consolidation, the cumulative dissipated energy of saturated coral sand has a unique generation pattern with excess pore water pressure ratio under different cyclic loading conditions.
Abstract How cyclic loading frequency affects the liquefaction characteristics of saturated coral sand was investigated by performing undrained cyclic shear tests subjected to a 90° jump of principal stress, with consideration given to cyclic stress ratios (CSR) of 0.25, 0.30, 0.35, and 0.40, orientations of major principal stress of 0°, 22.5°, 45°, 67.5°, and 90°, and cyclic loading frequencies ( f ) of 0.05, 0.1, 0.5, and 1 Hz. The test results show that increasing f decreases the generation rate of excess pore water pressure and deformation. Under the same cyclic stress path, the amplitude of deviatoric strain and the excess pore water pressure ratio (r u) have a unique relationship. The unit cyclic stress ratio (USR) was introduced to represent the liquefaction resistance of saturated coral sand under different cyclic loading modes, and increased f leads to increased liquefaction resistance. Under isotropic consolidation, the relationship between the cumulative dissipated energy (W c) and r u is almost independent of f, CSR, and cyclic stress path. A hyperbolic function model of W c with the development of r u is proposed, and its applicability is verified against data from the literature.
Experimental investigation of liquefaction characteristics of saturated coral sand subjected to complex cyclic stress paths: Effects of loading frequency
Highlights Increased cyclic loading frequency decreases the generation rate of excess pore water pressure and deformation. Under a given cyclic loading mode, the cyclic liquefaction resistance of saturated coral sand increases with the cyclic loading frequency. Under isotropic consolidation, the cumulative dissipated energy of saturated coral sand has a unique generation pattern with excess pore water pressure ratio under different cyclic loading conditions.
Abstract How cyclic loading frequency affects the liquefaction characteristics of saturated coral sand was investigated by performing undrained cyclic shear tests subjected to a 90° jump of principal stress, with consideration given to cyclic stress ratios (CSR) of 0.25, 0.30, 0.35, and 0.40, orientations of major principal stress of 0°, 22.5°, 45°, 67.5°, and 90°, and cyclic loading frequencies ( f ) of 0.05, 0.1, 0.5, and 1 Hz. The test results show that increasing f decreases the generation rate of excess pore water pressure and deformation. Under the same cyclic stress path, the amplitude of deviatoric strain and the excess pore water pressure ratio (r u) have a unique relationship. The unit cyclic stress ratio (USR) was introduced to represent the liquefaction resistance of saturated coral sand under different cyclic loading modes, and increased f leads to increased liquefaction resistance. Under isotropic consolidation, the relationship between the cumulative dissipated energy (W c) and r u is almost independent of f, CSR, and cyclic stress path. A hyperbolic function model of W c with the development of r u is proposed, and its applicability is verified against data from the literature.
Experimental investigation of liquefaction characteristics of saturated coral sand subjected to complex cyclic stress paths: Effects of loading frequency
Qin, You (Autor:in) / Xu, Zihao (Autor:in) / Yang, Zhengtao (Autor:in) / Du, Xinyu (Autor:in) / Ma, Weijia (Autor:in) / Chen, Guoxing (Autor:in)
Applied Ocean Research ; 138
07.07.2023
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Liquefaction Characteristics of Saturated Coral Sand Under Anisotropic Consolidations
British Library Conference Proceedings | 2022
|Centrifuge modelling of liquefaction of saturated sand under cyclic loading
British Library Conference Proceedings | 2004
|